论文标题

一维氦的实验实现

Experimental Realization of One Dimensional Helium

论文作者

Del Maestro, Adrian, Nichols, Nathan S., Prisk, Timothy R., Warren, Garfield, Sokol, Paul E.

论文摘要

表现出一维(1D)量子现象的实验平台的实现是难以捉摸的,因为它们固有缺乏稳定性,其中有一些值得注意的例外,包括旋转链,碳纳米管和超速低密度气体。此类系统在远程顺序中的困难是其在Tomonaga-Luttinger液体理论方面的有效描述不可或缺的一部分。最近,有人提出,玻色石超流体4HE可以在Luttinger液体范式之外实现1D量子系统。在这里,我们通过使用纳米工程技术来描述对这种行为的实验性观察,该纳米工程用具有贵重气体的多孔材料来增强尺寸降低。限制的4HE的产生激发在质量上与3D和2D超流体氦气不同,并且可以根据Luttinger液体中的移动杂质进行分析,从而允许表征出现的量子液体。狭窄的氦系统提供了通过压力进行调整的可能性 - 从弱相互作用,一直到强烈相互作用的硬核颗粒的超级tonks-Girardeau气体。

The realization of experimental platforms exhibiting one dimensional (1D) quantum phenomena has been elusive, due to their inherent lack of stability, with a few notable exceptions including spin chains, carbon nanotubes and ultracold low-density gasses. The difficulty of such systems in exhibiting long range order is integral to their effective description in terms of the Tomonaga-Luttinger liquid theory. Recently, it has been proposed that bosonic superfluid 4He could realize a 1D quantum system beyond the Luttinger liquid paradigm. Here we describe an experimental observation of this behavior using nanoengineering by preplating a porous material with a noble gas to enhance dimensional reduction. The resulting excitations of the confined 4He are qualitatively different than 3D and 2D superfluid helium, and can be analyzed in terms of a mobile impurity in a Luttinger liquid allowing for the characterization of the emergent quantum liquid. The confined helium system offers the possibility of tuning via pressure - from weakly interacting, all the way to the super Tonks-Girardeau gas of strongly interacting hard-core particles.

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